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The space environment monitor aboard FY-2 satellite
作者姓名:ZHU Guangwu  LI Baoquan  WANG Shijin  LIN Hua'an  LIANG Jinbao  SUN Yueqiang & WU Weiqi The Center for Space Science and Applied Research  Chinese Academy of Sciences  Beijing  China
作者单位:ZHU Guangwu,LI Baoquan,WANG Shijin,LIN Hua'an,LIANG Jinbao,SUN Yueqiang & WU Weiqi The Center for Space Science and Applied Research,Chinese Academy of Sciences,Beijing 100080,China
摘    要:The space environment monitor (SEM) aboard FY-2 satellite consists of the high energy particle detector (HEPD) and the solar X-ray flux detector (SXFD). The SEM can provide real-time monitoring of flare and solar proton event for its operation at geostationary orbit and is also the first Chinese space system for monitoring and alerting solar proton event. During the 23rd solar maximum cycle, almost all the solar proton events that took place in this period are monitored and some of them are predicted successfully by analyzing the characteristics of X-ray flare monitored by the SEM. Some basic variation characteristics of particle at geostationary orbit are found such as day-night periodic variation of particle flux, the electron flux with energy >1.4 MeV in the scope from 10 to 200/cm2 s sr and the proton flux with energy >1.1 MeV in the scope from 600 to 8000/cm·s·sr during the time with no magnetic storm and solar eruption.

收稿时间:20 May 2004

The space environment monitor aboard FY-2 satellite
ZHU Guangwu,LI Baoquan,WANG Shijin,LIN Hua''''an,LIANG Jinbao,SUN Yueqiang & WU Weiqi The Center for Space Science and Applied Research,Chinese Academy of Sciences,Beijing ,China.The space environment monitor aboard FY-2 satellite[J].Science in China(Physics Astronomy),2005,48(1):26-32.
Authors:ZHU Guangwu  LI Baoquan  WANG Shijin  LIN Hua'an  Liang Jinbao  SUN Yueqiang  Wu Weiqi
Institution:The Center for Space Science and Applied Research, Chinese Academy of Sciences, Beijing 100080,China
Abstract:The space environment monitor (SEM) aboard FY-2 satellite consists of the high energy particle detector (HEPD) and the solar X-ray flux detector (SXFD). The SEM can provide real-time monitoring of flare and solar proton event for its operation at geostationary orbit and is also the first Chinese space system for monitoring and alerting solar proton event. During the 23rd solar maximum cycle, almost all the solar proton events that took place in this period are monitored and some of them are predicted successfully by analyzing the characteristics of X-ray flare monitored by the SEM. Some basic variation characteristics of particle at geostationary orbit are found such as day-night periodic variation of particle flux, the electron flux with energy >1.4 MeV in the scope from 10 to 200/cm2.s.sr and the proton flux with energy >1.1 MeV in the scope from 600 to 8000/cm2.s.sr during the time with no magnetic storm and solar eruption.
Keywords:space environment monitor  space weather  solar proton event  
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